昌迪加尔市环境噪声水平评价与制图:一个案例研究

IF 0.6 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
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引用次数: 0

摘要

印度昌迪加尔的快速城市化和人口增长导致噪音污染水平上升,影响了居民的生活质量。本研究论文旨在对昌迪加尔市进行全面的噪声分析和制图。在这项研究中,昌迪加尔镇的25个监测点利用噪声描述符(L10、L50、L90、NC、TNI和NPL)分析了交通噪声。在早高峰时段(上午9点至11点)和晚高峰时段(下午5点至7点)监测25个站点的小时等效噪声水平,分析城市环境噪声污染情况。该研究利用地理信息系统(GIS)创建了详细的噪声图,确定了关键噪声源,并为有效的噪声控制策略提供了见解。进行社会声学调查,分析公众对噪音污染及相关健康危害的看法。本研究结果可协助决策者、城市规划者和环保人士制定可持续城市发展计划,并减轻噪音污染的不利影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment and Mapping of Environmental Noise Levels in Chandigarh City: A Case Study
Rapid urbanization and population growth in Chandigarh, India, have resulted in increased noise pollution levels, affecting the quality of life for its residents. This research paper aims to conduct a comprehensive analysis and noise mapping of Chandigarh City. In this study 25 monitoring sites throughout Chandigarh township were utilised to analyse traffic noise using noise descriptors (L10, L50, L90, NC, TNI and NPL). The hourly equivalent noise levels of 25 sites were monitored at peak morning hours (9AM-11AM) and peak evening hours (5PM-7PM) to analyse the environmental noise pollution scenario in the city. The study utilizes geographic information systems (GIS) to create a detailed noise map, identifying critical noise sources and providing insights for effective noise control strategies. A socio-acoustic survey conducted to analyse the public perception towards noise pollution and associated health hazards. The findings of this research can assist policymakers, urban planners, and environmentalists in developing sustainable urban development plans and mitigating the adverse effects of noise pollution.
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来源期刊
CiteScore
1.30
自引率
14.30%
发文量
42
审稿时长
7 months
期刊介绍: Started in 1963, this journal publishes Original Research Contribution as full papers, notes and reviews on classical and quantum physics, relativity and gravitation; statistical physics and thermodynamics; specific instrumentation and techniques of general use in physics, elementary particles and fields, nuclear physics, atomic and molecular physics, fundamental area of phenomenology, optics, acoustics and fluid dynamics, plasmas and electric discharges, condensed matter-structural, mechanical and thermal properties, electronic, structure, electrical, magnetic and optical properties, cross-disciplinary physics and related areas of science and technology, geophysics, astrophysics and astronomy. It also includes latest findings in the subject under News Scan.
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